Regional volumes and spatial volumetric distribution of gray matter in the gender dysphoric brain

性别焦虑 性二态性 小脑 心理学 大脑大小 性别特征 性别认同障碍 下丘脑 生理学 内分泌学 发展心理学 内科学 生物 医学 神经科学 磁共振成像 性别认同 社会心理学 放射科
作者
Elseline Hoekzema,Sebastian E.E. Schagen,Baudewijntje P.C. Kreukels,Dick J. Veltman,Peggy T. Cohen‐Kettenis,Henriette Delemarre-van de Waal,Julie Bakker
出处
期刊:Psychoneuroendocrinology [Elsevier]
卷期号:55: 59-71 被引量:85
标识
DOI:10.1016/j.psyneuen.2015.01.016
摘要

The sexual differentiation of the brain is primarily driven by gonadal hormones during fetal development. Leading theories on the etiology of gender dysphoria (GD) involve deviations herein. To examine whether there are signs of a sex-atypical brain development in GD, we quantified regional neural gray matter (GM) volumes in 55 female-to-male and 38 male-to-female adolescents, 44 boys and 52 girls without GD and applied both univariate and multivariate analyses. In girls, more GM volume was observed in the left superior medial frontal cortex, while boys had more volume in the bilateral superior posterior hemispheres of the cerebellum and the hypothalamus. Regarding the GD groups, at whole-brain level they differed only from individuals sharing their gender identity but not from their natal sex. Accordingly, using multivariate pattern recognition analyses, the GD groups could more accurately be automatically discriminated from individuals sharing their gender identity than those sharing their natal sex based on spatially distributed GM patterns. However, region of interest analyses indicated less GM volume in the right cerebellum and more volume in the medial frontal cortex in female-to-males in comparison to girls without GD, while male-to-females had less volume in the bilateral cerebellum and hypothalamus than natal boys. Deviations from the natal sex within sexually dimorphic structures were also observed in the untreated subsamples. Our findings thus indicate that GM distribution and regional volumes in GD adolescents are largely in accordance with their respective natal sex. However, there are subtle deviations from the natal sex in sexually dimorphic structures, which can represent signs of a partial sex-atypical differentiation of the brain.

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